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Articles by Muhammad Anwar
Total Records ( 3 ) for Muhammad Anwar
  Tariq Mahmood , Muhammad Ali , Muhammad Anwar and Shahid Iqbal
  Five cross of Brassica juncea viz., SMP 13-78 x Zem-I, SML 31E x Zem-I, DL 8 x Zem-I, SM 83000 x Zem-I, Pr 171-71 x Zem-I were made. These crosses (F1's) along with their parents were sown and heterosis was studied for branches per plant, plant height (cm), number of siliquas and yield per plant (g) in F1 generation. It was found that a cross of SMP 13-78 x Zem-I showed maximum heterosis and heterobeltotic for all the characters studied. Therefore, this cross combination can fruitfully be utilized for improving yield and its components in future breeding programmes.
  Muhammad Akbar , Tariq Mahmood , Muhammad Yaqub , Muhammad Anwar , Muhammad Ali and Nasim Iqbal
  Eighteen lines/varieties of Brassica juncea L. were evaluated for plant height, number of branches plant-1, Number of siliquas plant-1, 1000 seed weight and seed yield plant-1 through PCV, GCV, h2, G.A., correlations and path coefficient analysis. Number of siliquas plant-1 found strong parameter followed by number of branches and Plant height for seed yield improvement. Siliquas plant-1 had highest GCV, h2, G.A., highly significant positive correlation and maximum direct contribution for seed yield followed by number of branches plant-1 and plant height.
  Tariq Mahmood , Muhammad Ali , Shahid Iqbal and Muhammad Anwar
  In mustard (Brassica juncea) broad-sense heritabilities, coefficients of variability and genetics advance values were computed for primary branches, plant height, siliquas per plant and seed yield per plant in four single crosses. Number of siliquas per plant were highly heritable coupled with high genetic advance and coefficient of variability. It reflected a great scope for selection. Cross combinations 86-4-3 x Poorbi Raya and 86-16-1 x Poorbi Raya were particularly valuable for various characters. They gave high heritability and genetics advance for most characters. Indicating that selection should lead to a fast genetic improvement of the material.
 
 
 
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